Match tier
Listed
Presence
Current · Arkansas
Last published
2020
Sources
OpenAlex · ORCID
Refreshed
2026-10-03
P
Research Areas
Biomedical Subjects
Biography and Research Information
Metrics
- h-index: 2
- Publications: 3
- Citations: 45
Selected Publications
-
(Thio)urea-Based Covalent Organic Framework as a Hydrogen-Bond-Donating Catalyst (2020)
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Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [18F]fluorophenylglutamine and [18F]fluorobiphenylglutamine (2020)
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Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [ 18 F]fluorophenylglutamine and [ 18 F]fluorobiphenylglutamine (2020)
Collaboration Network
Top Collaborators
Ji‐Yun Hu
University of Arkansas at Fayetteville (US)
3 shared publications
- (Thio)urea-Based Covalent Organic Framework as a Hydrogen-Bond-Donating Catalyst
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [18F]fluorophenylglutamine and [18F]fluorobiphenylglutamine
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [ 18 F]fluorophenylglutamine and [ 18 F]fluorobiphenylglutamine
M. Hassan Beyzavi
University of Arkansas at Fayetteville
3 shared publications
In database
- (Thio)urea-Based Covalent Organic Framework as a Hydrogen-Bond-Donating Catalyst
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [18F]fluorophenylglutamine and [18F]fluorobiphenylglutamine
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [ 18 F]fluorophenylglutamine and [ 18 F]fluorobiphenylglutamine
Tristan Baguet
Ghent University Hospital (BE)
2 shared publications
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [18F]fluorophenylglutamine and [18F]fluorobiphenylglutamine
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [ 18 F]fluorophenylglutamine and [ 18 F]fluorobiphenylglutamine
Jeroen Verhoeven
Ghent University Hospital (BE)
2 shared publications
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [18F]fluorophenylglutamine and [18F]fluorobiphenylglutamine
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [ 18 F]fluorophenylglutamine and [ 18 F]fluorobiphenylglutamine
Glenn Pauwelyn
Ghent University Hospital (BE)
2 shared publications
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [18F]fluorophenylglutamine and [18F]fluorobiphenylglutamine
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [ 18 F]fluorophenylglutamine and [ 18 F]fluorobiphenylglutamine
Stef De Lombaerde
Ghent University Hospital (BE)
2 shared publications
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [18F]fluorophenylglutamine and [18F]fluorobiphenylglutamine
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [ 18 F]fluorophenylglutamine and [ 18 F]fluorobiphenylglutamine
Sarah Piron
Ghent University Hospital (BE)
2 shared publications
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [18F]fluorophenylglutamine and [18F]fluorobiphenylglutamine
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [ 18 F]fluorophenylglutamine and [ 18 F]fluorobiphenylglutamine
Sam Donche
Ghent University Hospital (BE)
2 shared publications
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [18F]fluorophenylglutamine and [18F]fluorobiphenylglutamine
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [ 18 F]fluorophenylglutamine and [ 18 F]fluorobiphenylglutamine
Benedicte Descamps
Ghent University (BE)
2 shared publications
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [18F]fluorophenylglutamine and [18F]fluorobiphenylglutamine
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [ 18 F]fluorophenylglutamine and [ 18 F]fluorobiphenylglutamine
Ingeborg Goethals
Ghent University Hospital (BE)
2 shared publications
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [18F]fluorophenylglutamine and [18F]fluorobiphenylglutamine
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [ 18 F]fluorophenylglutamine and [ 18 F]fluorobiphenylglutamine
Christian Vanhove
Ghent University (BE)
2 shared publications
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [18F]fluorophenylglutamine and [18F]fluorobiphenylglutamine
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [ 18 F]fluorophenylglutamine and [ 18 F]fluorobiphenylglutamine
Filip De Vos
Ghent University Hospital (BE)
2 shared publications
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [18F]fluorophenylglutamine and [18F]fluorobiphenylglutamine
- Radiosynthesis, in vitro and preliminary in vivo evaluation of the novel glutamine derived PET tracers [ 18 F]fluorophenylglutamine and [ 18 F]fluorobiphenylglutamine
Federica Zanca
University of Sheffield (GB)
1 shared publication
- (Thio)urea-Based Covalent Organic Framework as a Hydrogen-Bond-Donating Catalyst
Miu Tsuji
University of Arkansas at Fayetteville (US)
1 shared publication
- (Thio)urea-Based Covalent Organic Framework as a Hydrogen-Bond-Donating Catalyst
Samantha Wijeweera
University of Arkansas at Fayetteville
1 shared publication
In database
- (Thio)urea-Based Covalent Organic Framework as a Hydrogen-Bond-Donating Catalyst